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Ybx1 fine-tunes PRC2 activities to control embryonic brain development.

Nature communications (2020-08-15)
Myron K Evans, Yurika Matsui, Beisi Xu, Catherine Willis, Jennifer Loome, Luis Milburn, Yiping Fan, Vishwajeeth Pagala, Jamy C Peng
ABSTRACT

Chromatin modifiers affect spatiotemporal gene expression programs that underlie organismal development. The Polycomb repressive complex 2 (PRC2) is a crucial chromatin modifier in executing neurodevelopmental programs. Here, we find that PRC2 interacts with the nucleic acid-binding protein Ybx1. In the mouse embryo in vivo, Ybx1 is required for forebrain specification and restricting mid-hindbrain growth. In neural progenitor cells (NPCs), Ybx1 controls self-renewal and neuronal differentiation. Mechanistically, Ybx1 highly overlaps PRC2 binding genome-wide, controls PRC2 distribution, and inhibits H3K27me3 levels. These functions are consistent with Ybx1-mediated promotion of genes involved in forebrain specification, cell proliferation, or neuronal differentiation. In Ybx1-knockout NPCs, H3K27me3 reduction by PRC2 enzymatic inhibitor or genetic depletion partially rescues gene expression and NPC functions. Our findings suggest that Ybx1 fine-tunes PRC2 activities to regulate spatiotemporal gene expression in embryonic neural development and uncover a crucial epigenetic mechanism balancing forebrain-hindbrain lineages and self-renewal-differentiation choices in NPCs.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Nuclei Isolation Kit: Nuclei EZ Prep, sufficient for 25 nuclei preparations (~1-10×107 cells/preparation)
Sigma-Aldrich
Poly-L-lysine hydrobromide, mol wt 30,000-70,000, lyophilized powder, γ-irradiated, BioXtra, suitable for cell culture
Sigma-Aldrich
Laminin from Engelbreth-Holm-Swarm murine sarcoma basement membrane, 1-2 mg/mL in Tris-buffered saline, 0.2 μm filtered, BioReagent, suitable for cell culture
Sigma-Aldrich
Poly-D-lysine hydrobromide, average mol wt 30,000-70,000, lyophilized powder, γ-irradiated, BioReagent, suitable for cell culture